Závacká Kamila, Neděla Vilém, Tihlaříková Eva, Šabacká Pavla, Maxa Jiří, Heger Dominik
Environmental Electron Microscopy Group, Institute of Scientific Instruments of the Czech Academy of Sciences, Královopolská 147, 61264Brno, Czech Republic.
Department of Chemistry, Faculty of Science, Masaryk University, Kamenice 5, 62500Brno, Czech Republic.
Microsc Microanal. 2022 Feb;28(1):196-209. doi: 10.1017/S1431927621013854.
Frozen aqueous solutions are an important subject of study in numerous scientific branches including the pharmaceutical and food industry, atmospheric chemistry, biology, and medicine. Here, we present an advanced environmental scanning electron microscope methodology for research of ice samples at environmentally relevant subzero temperatures, thus under conditions in which it is extremely challenging to maintain the thermodynamic equilibrium of the specimen. The methodology opens possibilities to observe intact ice samples at close to natural conditions. Based on the results of ANSYS software simulations of the surface temperature of a frozen sample, and knowledge of the partial pressure of water vapor in the gas mixture near the sample, we monitored static ice samples over several minutes. We also discuss possible artifacts that can arise from unwanted surface ice formation on, or ice sublimation from, the sample, as a consequence of shifting conditions away from thermodynamic equilibrium in the specimen chamber. To demonstrate the applicability of the methodology, we characterized how the true morphology of ice spheres containing salt changed upon aging and the morphology of ice spheres containing bovine serum albumin. After combining static observations with the dynamic process of ice sublimation from the sample, we can attain images with nanometer resolution.
冷冻水溶液是众多科学领域(包括制药和食品工业、大气化学、生物学和医学)中的一个重要研究课题。在此,我们提出一种先进的环境扫描电子显微镜方法,用于研究与环境相关的零下温度下的冰样本,即在维持样本热力学平衡极具挑战性的条件下进行研究。该方法为在接近自然条件下观察完整的冰样本提供了可能性。基于ANSYS软件对冷冻样本表面温度的模拟结果以及对样本附近气体混合物中水蒸气分压的了解,我们对静态冰样本进行了数分钟的监测。我们还讨论了由于样品室中的条件偏离热力学平衡而可能在样本上形成不需要的表面冰或样本发生冰升华所产生的伪像。为了证明该方法的适用性,我们表征了含盐水冰球老化后以及含牛血清白蛋白冰球的真实形态变化。将静态观察与样本冰升华的动态过程相结合后,我们能够获得纳米分辨率的图像。